Zhang Wenjun, Cheng Cheng, Chen Li, Di Shanshan, Liu Chunxiao, Diao Jinling, Zhou Zhiqiang
Beijing Advanced Innovation Center for Food Nutrition and Human Health, Department of Applied Chemistry, China Agricultural University, Yuanmingyuan West Road 2, Beijing 100193, China.
Beijing Advanced Innovation Center for Food Nutrition and Human Health, Department of Applied Chemistry, China Agricultural University, Yuanmingyuan West Road 2, Beijing 100193, China.
Chemosphere. 2016 Sep;159:50-57. doi: 10.1016/j.chemosphere.2016.05.073. Epub 2016 Jun 5.
Enantioselectivity in ecotoxicity, digestion and uptake of chiral pesticide cyproconazole to Chlorella pyrenoidosa was studied. The 96h-EC50 values of rac- and the four enantiomers were 9.005, 6.616, 8.311, 4.290 and 9.410 mg/L, respectively. At the concentrations of 8 mg/L and 14 mg/L, the contents of pigments exposed in rac-, enantiomer-2 and 4 were higher than that exposed in enantiomer-1 and 3. The superoxide dismutase (SOD) and catalase (CAT) activity of algae exposed to enantiomer-1 and 3 was higher than that exposed to the rac-, enantiomer-2 and 4 at three levels. In addition, the malondialdehyde (MDA) concentrations in algae disposed with enantiomer-1 and 3 were increased remarkably at three levels. For the digestion experiment, the half-lives of four enantiomers in algae suspension were 28.06, 19.10, 21.13, 15.17 days, respectively. During the uptake experiment, the order of the concentrations of cyproconazole in algae cells was enantiomer-4, 2, 3 and 1. Based on these data, we concluded that ecotoxicity, digestion and uptake of chiral pesticide cyproconazole to C. pyrenoidosa were enantioselective, and such enantiomeric differences must be taken into consideration when assessing the risk of cyproconazole to environment.
研究了手性农药环丙唑醇对蛋白核小球藻的生态毒性、消化和吸收过程中的对映体选择性。外消旋体和四种对映体的96h-EC50值分别为9.005、6.616、8.311、4.290和9.410mg/L。在8mg/L和14mg/L浓度下,外消旋体、对映体-2和4处理的藻细胞中色素含量高于对映体-1和3处理的藻细胞。在三个浓度水平下,对映体-1和3处理的藻细胞中超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性高于外消旋体、对映体-2和4处理的藻细胞。此外,对映体-1和3处理的藻细胞中丙二醛(MDA)含量在三个浓度水平下均显著增加。消化实验中,四种对映体在藻悬浮液中的半衰期分别为28.06、19.10、21.13、15.17天。吸收实验中,藻细胞中环丙唑醇浓度顺序为对映体-4、2、3和1。基于这些数据,我们得出结论,手性农药环丙唑醇对蛋白核小球藻的生态毒性、消化和吸收具有对映体选择性,在评估环丙唑醇对环境的风险时必须考虑这种对映体差异。